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Biohydrogen production from waste substrates as a clean energy
Mustafa Kahyaoǧlu,
O. Şahin
, Cafer Saka
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Siirt University
Araştırma sonucu
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Makale
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bilirkişi
12
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Sıralama ölçütü
Ağırlık
Alfabetik sıralama
Keyphrases
Clean Energy
100%
Biohydrogen Production
100%
Waste Substrates
100%
Pollution
50%
Energy Production
50%
Rapid Development
50%
High Energy
50%
Electricity Generation
50%
Industrial Sector
50%
Hydrogen Gas
50%
Biological Processes
50%
Residential Sector
50%
Fossil Fuels
50%
Human Activities
50%
Living Things
50%
Energy Yield
50%
Economic Growth
50%
Microorganisms
50%
Alternative Fuels
50%
Industrial Activities
50%
Industrialization
50%
Relative Advantage
50%
Industrial Waste
50%
Sustainable Energy Systems
50%
Greenhouse Gas
50%
Transportation Sector
50%
Standard of Living
50%
Environmentally Friendly Fuel
50%
Commercial Sector
50%
Population Economics
50%
Bioprocessing Strategies
50%
Microbial Producers
50%
Poisonous Gas
50%
Clean Energy Generation
50%
Engineering
Clean Energy
100%
Biohydrogen Production
100%
Fossil Fuel
33%
Power Generation
33%
Residential Sector
33%
Energy Production
33%
Energy Yield
33%
Microbial
33%
Industrial Sector
33%
Hydrogen Gas
33%
Transportation Sector
33%
Produce Hydrogen
33%
Industrial Activity
33%
Greenhouse Gas
33%
Renewable Energy
33%
Electricity Generation
33%
Living Standard
33%
Bioprocessing
33%
Earth and Planetary Sciences
Clean Energy
100%
Electricity Generation
33%
Renewable Energy
33%
Greenhouse Gas
33%
Energy Production
33%
Micro-Organism
33%
Industrial Activity
33%
Bioprocessing
33%
Energy Generation
33%
Fossil Fuel
33%
Alternative Fuel
33%
Biological Process
33%
Industrial Waste
33%
Material Science
Greenhouse Gas
100%
Alternative Fuel
100%
Fossil Fuel
100%